Novel vertical drag line layout structure

By designing the spatial layout between the connecting beams and crossbeams, and combining the cable trays and protective covers, the pipeline layout problem of vertical cable routing structures under space constraints is solved, achieving a reduction in pipeline length and meeting the machining stroke requirements, making it suitable for dual-column vertical machining centers.

CN223718872UActive Publication Date: 2025-12-26QI ZHONG SHU KONG ZHUANG BEI GU FEN YOU XIAN GONG SI
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Patent Information

Application Number
CN202423174655.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-26
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing vertical cable routing structures, with numerous pipelines and limited local space, struggle to effectively utilize the space on both sides of the column for cable routing layout, resulting in increased pipeline length and difficulty in meeting processing requirements.

Method used

A novel vertical cable routing layout structure is adopted, which utilizes the space between the connecting beam and the crossbeam. Through the design of the cable tray and the cover, the pipeline can be effectively laid out. This includes the combination of the cover, vertical cable routing, cable tray and cable duct. The crossbeam can be moved by the screw rod in the column.

Benefits of technology

In situations where space is limited, the cable routing layout meets the machining stroke requirements, reduces cable length, is suitable for dual-column vertical machining centers, and is easy to install without increasing the machine tool's external dimensions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel vertical drag line layout structure, and belongs to the technical field of machinery. The device comprises stand columns, a connecting beam and a cross beam, the connecting beam is fixed at the upper end position between the two stand columns, the cross beam is installed on guide rails on the front faces of the two stand columns, a bridge frame is combined on the back faces of the stand columns and below the connecting beam, a protective cover is combined on the front face of the connecting beam, and the lower end of the protective cover is in butt joint with the lower end of the bridge frame. And one end of the vertical dragging wire is combined on the connecting beam, and the other end of the vertical dragging wire is combined on the wiring groove. When the number of pipelines is large and the local space is limited, the space between the connecting beam and the cross beam is utilized, the layout of the tow line meets the machining stroke, installation is easy, and the appearance size of the machine tool is not increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a novel vertical wire layout structure and belongs to the technical field of machinery. BACKGROUND

[0002] The conventional vertical wire is installed on the outside of the column, the vertical wire with a single tool holder is installed on the outside of one side column, the vertical wire with a double tool holder is installed on the outside of two side columns, and is suitable for the case that there are not many pipelines.

[0003] When the vertical wire management is more and many pipelines need to be connected with the pipelines on the left and right sides of the tool holder through the horizontal wire, the conventional vertical wire needs to be installed on both sides of the column to meet the requirement, the length of the pipeline is greatly increased, and the vertical wire on both sides of the column is difficult to be used due to the limitation of the local space, such as the tool holder stroke and the installation space of the horizontal wire groove plate. SUMMARY

[0004] In order to overcome the defects of the prior art, the utility model provides a novel vertical wire layout structure, which can ensure that the machine tool utilizes the space between the connecting beam and the cross beam to realize the layout of the wire to meet the machining stroke when there are many pipelines and the local space is limited, the length of the pipeline is reduced, and the local space is used to meet the use of the vertical wire.

[0005] The utility model discloses a novel vertical wire layout structure, which comprises a shield, a vertical wire, a wire groove and a bridge, the bridge is combined on the back of the column and below the connecting beam, the connecting beam is fixed to the upper end position between the two columns, the cross beam is installed on the front of the column, and the cross beam moves up and down on the column guide rail through the lead screw in the column; the front of the connecting beam is combined with the shield, and the lower end of the shield is connected with the lower end of the bridge; the wire groove is combined above the cross beam, one end of the vertical wire is combined on the connecting beam, and the other end is combined on the wire groove.

[0006] The utility model discloses a novel vertical wire layout structure, which comprises a shield, a vertical wire, a wire groove and a bridge, the bridge is combined on the back of the column and below the connecting beam, the connecting beam is fixed to the upper end position between the two columns, the cross beam is installed on the front of the column, and the cross beam moves up and down on the column guide rail through the lead screw in the column; the front of the connecting beam is combined with the shield, and the lower end of the shield is connected with the lower end of the bridge; the wire groove is combined above the cross beam, one end of the vertical wire is combined on the connecting beam, and the other end is combined on the wire groove. BRIEF DESCRIPTION OF DRAWINGS

[0007] The utility model will be further explained in connection with the drawings and specific embodiments.

[0008] Figure 1 It is the circuit schematic diagram of the utility model.

[0009] Figure 2 It is the position schematic diagram of the connecting beam.

[0010] Mark in the drawing:

[0011] 1, shield, 2, vertical cable, 3, cable slot, 4, bridge, 5, column, 6, connecting beam, 7, cross beam. DETAILED DESCRIPTION

[0012] As shown in Figure 1 A new vertical cable layout structure, as shown in 2, including shield 1, vertical cable 2, cable slot 3 and bridge 4, the bridge 4 is combined with the back of the column 5 and below the connecting beam 6, the connecting beam 6 is fixed at the upper end position between the two columns 5, the cross beam 7 is installed on the front of the column 5, and the cross beam 2 moves up and down on the column guide rail through the lead screw in the column; the connecting beam 6 is combined with the shield 1 on the front, the lower end of the shield 1 is butt jointed with the lower end of the bridge 4; the cable slot 3 is combined above the cross beam 7, one end of the vertical cable 2 is combined on the connecting beam 6, and the other end is combined on the cable slot 3.

[0013] Working principle: the pipeline passes through the inlet of the bridge 4 below the back of the column 5 to the back of the connecting beam 6, and then passes through the bridge 4 below the connecting beam 6 to the front of the connecting beam 6, the pipeline enters the vertical cable 2 on the front of the connecting beam 6 after passing through the shield 1, the other end of the vertical cable 2 is combined on the cable slot 3, so as to realize the pipeline to the inlet of the horizontal cable.

Claims

1. A novel vertical cable layout structure, characterized by: It includes a shield (1), a vertical drag line (2), a wire slot (3) and a bridge (4), the bridge (4) is combined with the back of the column (5) and below the connecting beam (6), the connecting beam (6) is fixed between the upper end position of two columns (5), the crossbeam (7) is installed on the front of the column (5); the front of the connecting beam (6) is combined with the shield (1), the lower end of the shield (1) is butt jointed with the lower end of the bridge (4); the wire slot (3) is combined above the crossbeam (7), one end of the vertical drag line (2) is combined on the connecting beam (6), and the other end is combined on the wire slot (3).